K201 [KODENSHI]

Photocoupler(These Photocouplers consist of two Gallium Arsenide Infrared Emitting); 光耦合器(这些光电耦合器由两个砷化镓红外发光)
K201
型号: K201
厂家: KODENSHI KOREA CORP.    KODENSHI KOREA CORP.
描述:

Photocoupler(These Photocouplers consist of two Gallium Arsenide Infrared Emitting)
光耦合器(这些光电耦合器由两个砷化镓红外发光)

光电
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Photocoupler  
K201 • K202 • K204  
These Photocouplers consist of two Gallium Arsenide Infrared Emitting  
Diodes connected in a reverse-paralled configuration for AC-input  
and a Silicon NPN Phototransistor per a channel.  
The K201 has one channel in a 4-pin mini-flat SMD package.  
The K202 has two channels in a 8-pin mini-flat SMD package.  
The K204 has four channels in a 16-pin mini-flat SMD package.  
FEATURES  
• Mini-flat Package  
• Collector-Emitter Voltage : Min.50V  
• Current Transfer Ratio : 50% Min.  
(at IF= ± 5mA, VF=5V)  
• Electrical Isolation Voltage : AC3750Vrms  
APPLICATIONS  
• AC Signal Input  
• Interface between two circuits of difference Potentail  
• Cordless Phone  
• Programmable Logic Control  
ON  
(Unit : mm)  
DIMENSI  
K202  
1
K20  
8
7
6
5
3
2
1
3
4
2
1
Orientation Mark  
3.6 0.2  
Orientation Mark  
7.0 0.5  
7.0  
0.5  
8.7  
0.2  
0.2  
5.2  
5.2 0.2  
0.4Min.  
0.4Min.  
0.4 0.1  
2.54  
2.54  
2.54 0.25  
K204  
16  
12  
15  
13  
11  
10  
9
14  
2
1
3
4
5
6
7
8
Orientation Mark  
7.0 0.5  
5.2 0.2  
18.8  
0.2  
0.4Min.  
2.54  
2.54  
1/3  
Photocoupler  
K201 • K202 • K204  
MAXIMUM RATINGS  
(Ta=25)  
Unit  
Parameter  
Symbol  
IF  
Rating  
± 50  
± 1  
Forward Current  
mA  
Peak Forward Current*1  
Input  
IFP  
A
mW  
V
Power Dissipation  
PD  
70  
Collector-Emitter Breakdown Voltage  
Emitter-Collector Breakdown Voltage  
Collector Current  
BVCEO  
BVECO  
IC  
50  
6
V
Output  
50  
mA  
mW  
Vrms  
Collector Power Dissipation  
Input to Output Isolation Voltage*2  
PC  
150  
Viso  
Tstg  
Topr  
Tsol  
AC3750  
-55~+125  
-30~+100  
260  
Storage Temperature  
Operating Temperature  
Lead Soldering Temperature*3  
Total Power Dissipation  
Ptot  
200  
mW  
*1. Input current with 100ms pulse width, 1% duty cycle  
*2. Measured at RH=40~60% for 1min  
*3. 1/16 inch form case for 10sec  
ELECTRO-OPTICAL CHARACTERISTICS  
Parameter  
(Ta=25, unless otherwise noted)  
Symbol  
VF  
Condition  
Min.  
Typ.  
Max.  
Unit.  
Forward Voltage  
Input  
-
-
1.15  
1.30  
V
IF= ± 10mA  
Capacitance  
CT  
30  
-
pF  
V
V=0, f=1kHz  
Collector-Emitter Breakdown Voltage  
BVCEO  
BVECO  
ICEO  
50  
6
-
-
-
IC=0.5mA  
Emitter-Collector Breakdown Voltage  
Output  
-
-
-
V
IE=0.1mA  
Collector Dark Current  
100  
nA  
pF  
%
IF=0, VCE=24V  
VCE=0, f=1MHz  
IF= ± 5mA, VCE=5V  
IF= ± 5mA, IC=1mA  
V=0, f=1KHz  
Capacitance  
Current Transfer Ratio*4  
CCE  
-
10  
-
-
CTR  
VCE(SAT)  
CIO  
50  
-
600  
Collector-Emitter Saturation Voltage  
0.15  
1
1011  
0.4  
V
Input-Output Capacitance  
Coupled  
-
-
-
pF  
Input-Output Isolation Resistance  
RIO  
RH=40~60%, V=500V  
VCE=5V, RL=100Ω  
IC=2mA  
-
Rise Time  
Fall Time  
tr  
-
4
4
-
-
tf  
-
-
CTR1/CTR2  
Symmetry Ratio  
*4. CTR=(IC/IF) X 100 (%)  
1
3
2/3  
Photocoupler  
K201 • K202 • K204  
Forward Current vs.  
Ambient Temperature  
Collector Power Dissipation vs.  
Ambient Temperature  
Forward Current vs.  
Forward Voltage  
100  
80  
50  
40  
30  
20  
250  
200  
150  
100  
60  
40  
Ta=70  
Ta=25℃  
20  
0
10  
0
50  
0
Ta=-55℃  
1.2 1.6  
0.4  
0.8  
-20  
0
20  
40  
60  
80  
100  
-20  
0
20  
40  
60  
80  
100  
Forward Voltage VF (V)  
Ambient Temperature Ta ()  
Ambient Temperature Ta ()  
Collector Current vs.  
Collector-Emitter Voltage  
Dark Current vs.  
Ambient Temperature  
Collector Current vs.  
Ambient Temperature  
1
100  
10  
1
Ta=25℃  
IF=30mA  
40  
30  
20  
10  
IF=20mA  
VCE=24V  
0.1  
IF=20mA  
IF=10mA  
IF=5mA  
PC(max.)  
IF=10mA  
0.01  
IF=5mA  
IF=1mA  
IF=1mA  
0.001  
0
0
2
4
6
8
10  
0
20  
40  
60  
80  
100  
-20  
0
20  
40  
60  
80  
Collector-Emitter Voltage VCE (V)  
Ambient Temperature Ta ()  
Ambient Temperature Ta ()  
Switching Time Test Circuit  
Collector Current vs.  
Forward Current  
Response Time vs.  
Load Resistance  
VCC  
RL  
100  
10  
1
R
500  
VCE=5V  
IC=2mA  
Ta=25℃  
Ta=25℃  
VCE=5V  
VIN  
VO  
100  
10  
1
tr  
tf  
Test Circuit  
0.1  
Input  
Output  
0.01  
10%  
90%  
0.001  
0.1  
tr  
tf  
0.1  
1.0  
2.0  
0.1  
1
10  
100  
Waveform  
Forward Current IF (mA)  
Load Resistance RL ()  
3/3  

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